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Influence of aircraft surface distribution on electromagnetic scattering characteristics 被引量:9
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作者 Liu Dawei Huang Jun +1 位作者 Song Lei Ji Jinzu 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2017年第2期759-765,共7页
In this paper,two typical stealth aircraft concepts(wing fuselage blended and flyingwing) were designed.Then three gradually changed surface distribution models with the same planform for each concept were created.B... In this paper,two typical stealth aircraft concepts(wing fuselage blended and flyingwing) were designed.Then three gradually changed surface distribution models with the same planform for each concept were created.Based on the multilevel fast multipole algorithm(MLFMA),the vertical polarization transmitting/vertical polarization receiving(VV) and horizontal polarization transmitting/horizontal polarization receiving(HH) radar cross section(RCS) characteristics were simulated with five frequencies between 0.1 and 1.0 GHz.The influences and mechanisms of aircraft surface distribution on electromagnetic scattering characteristics were investigated.The results show that for the wing fuselage blended concept,the W RCS of this frequency range is higher than the HH RCS in most cases,while it is just the opposite for the flying-wing concept.As for the two aircraft concepts,the RCS levels of HH and W both decrease with the frequency increasing,but the HH RCS has a faster downward trend.The surface distribution has little influence on HH RCS characteristics.On the contrary,it has a significant impact on W RCS characteristics,and the amplitude of the VV RCS increases with the surface thickness. 展开更多
关键词 Aircraft concept electromagnetic scattering characteristic Horizontal polarization MLFMA STEALTH Surface distribution Vertical polarization
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The microwave scattering characteristics of sea ice in the Bohai Sea 被引量:1
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作者 LIU Meijie DAI Yongshou +4 位作者 ZHANG Jie ZHANG Xi MENG Junmin ZHU Xiuqin YIN Yalei 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2016年第5期89-98,共10页
Microwave remote sensing has become the primary means for sea-ice research, and has been supported by a great deal of field experiments and theoretical studies regarding sea-ice microwave scattering. However, these st... Microwave remote sensing has become the primary means for sea-ice research, and has been supported by a great deal of field experiments and theoretical studies regarding sea-ice microwave scattering. However, these studies have been barely carried in the Bohai Sea. The sea-ice microwave scattering mechanism was first developed for the thin sea ice with slight roughness in the Bohai Sea in the winter of 2012, and included the backscattering coefficients which were measured on the different conditions of three bands(L, C and X), two polarizations(HH and VV), and incident angles of 20° to 60°, using a ground-based scatterometer and the synchronous physical parameters of the sea-ice temperature, density, thickness, salinity, and so on. The theoretical model of the sea-ice electromagnetic scattering is obtained based on these physical parameters. The research regarding the sea-ice microwave scattering mechanism is carried out through two means, which includes the comparison between the field microwave scattering data and the simulation results of the theoretical model, as well as the feature analysis of the four components of the sea-ice electromagnetic scattering. It is revealed that the sea-ice microwave scattering data and the theoretical simulation results vary in the same trend with the incident angles. Also, there is a visible variant in the sensitivity of every component to the different bands.For example, the C and X bands are sensitive to the top surface, the X band is sensitive to the scatterers, and the L and C bands are sensitive to the bottom surface, and so on. It is suggested that the features of the sea-ice surfaces and scatterers can be retrieved by the further research in the future. This experiment can provide an experimental and theoretical foundation for research regarding the sea-ice microwave scattering characteristics in the Bohai Sea. 展开更多
关键词 sea-ice field experiment sea-ice microwave scattering characteristics sea-ice physical parameters sea-ice electromagnetic scattering theory
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